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Supervisor: Dr Guiping Wang Course start date: 1st October 2027 Project details For further information about the research group, please visit our website at https://www.cruk.cam.ac.uk/research
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microscopy and local probes, biomaterials, as well as the synthesis and characterization of functional materials (organic, inorganic, or hybrid). The Institute hosts a large range of state-of-the-art
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essential for flagellar protein export, but its presence ensures a robust and efficient assembly process. The project combines bacterial genetics, biochemical approaches, and super-resolution microscopy. Your
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transduction, multicolor flow cytometry and FACS sorting, light/fluorescence and confocal microscopy and irradiation. In addition, you will support general tasks within the lab such as preparing buffers. We
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microscopy techniques to investigate the disease genetics and developmental biology of the trachea (windpipe) and esophagus (food pipe). For more information visit https://edwards-lab.org. Our group values
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acquire in the course of the PhD skills in live microscopy, experimental neurobiology, genetics and behavioural work. The student will receive mentoring and have the chance to guide the research and
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to further improve and extend MLLs as part of a large project to image, understand and ultimately control electron dynamics in molecular systems. To do this, we are combining concepts from X-ray microscopy
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the private sector. This project will directly impact various scientific fields, including chemistry, biology, and materials science, with applications in tech and medicine. (See https://www.nsf.gov/tip
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such as the chloroplast and mitochondria must be revealed to fully understand how organisms respond to their environment. 3D electron microscopy has become one of the essential approaches for revealing and
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extracellular matrix components and growth factors. Perform 2D and 3D cell culture experiments using intestinal cell lines and organoid models. Conduct cell biology, immunofluorescence and microscopy experiments